针对风电叶片玻璃纤维层合板的力学性能进行试验研究,确定其主要力学性能参数,分析各种铺层、测试方向及配方因素对玻璃纤维层合板力学性能的影响。依据BS EN ISO测试标准,应用微机控制万能试验机、应变仪对风电叶片玻璃纤维层合板进行...针对风电叶片玻璃纤维层合板的力学性能进行试验研究,确定其主要力学性能参数,分析各种铺层、测试方向及配方因素对玻璃纤维层合板力学性能的影响。依据BS EN ISO测试标准,应用微机控制万能试验机、应变仪对风电叶片玻璃纤维层合板进行拉伸、压缩及剪切破坏试验,得到试件的拉伸、压缩、剪切强度及弹性模量、泊松比等力学性能,并对四种不同配方玻璃纤维层合板的力学性能及其在不同加载方式下的破坏形态进行了比较与分析。结果表明,纤维层合板各向异性特征十分明显,沿纤维方向强度高;配方对层合板的力学性能有一定影响;其破坏形式与铺层方式和测试角度关系密切,而与其配方基本无关。展开更多
A fatigue failure criterion for predicting the fatigue life of notched orthotropic fiber reinforced plasties (FRP) plates based on the concept of stress field intensity (SFI) near the notch root is subjected to furt...A fatigue failure criterion for predicting the fatigue life of notched orthotropic fiber reinforced plasties (FRP) plates based on the concept of stress field intensity (SFI) near the notch root is subjected to further experiments. The investigation is accomplished by obtaining experimental data on the notched specimens of glass fiber reinforced plastics (GFRP) with edged notches under tension tension cyclic loading. The process of initiation and growth of fatigue damage near the notch root is measured by means of the optic system with a computer controlled display (CCD) camera. The experimental results show that the number of loading cycles required to initiate fatigue damage is governed by the stress field intensity.展开更多
A study was undertaken to determine the effects of several key geometry influencing factors on the impact response and energy absorption behavior of the glass fibre reinforced epoxy composites at low and intermediate ...A study was undertaken to determine the effects of several key geometry influencing factors on the impact response and energy absorption behavior of the glass fibre reinforced epoxy composites at low and intermediate energies.The energy-balance model was employed for characterising the energy absorption behavior and it depends strongly on the plate diameter and thickness.In addition,the damage vs.energy and force maps is effective in monitoring damage growth within the composite panel.The response of the composite laminate configurations characterized by different stacking sequences subjected to low velocity impacts with different impact energies have also been studied to estimate the damage initiation of composites.展开更多
文摘针对风电叶片玻璃纤维层合板的力学性能进行试验研究,确定其主要力学性能参数,分析各种铺层、测试方向及配方因素对玻璃纤维层合板力学性能的影响。依据BS EN ISO测试标准,应用微机控制万能试验机、应变仪对风电叶片玻璃纤维层合板进行拉伸、压缩及剪切破坏试验,得到试件的拉伸、压缩、剪切强度及弹性模量、泊松比等力学性能,并对四种不同配方玻璃纤维层合板的力学性能及其在不同加载方式下的破坏形态进行了比较与分析。结果表明,纤维层合板各向异性特征十分明显,沿纤维方向强度高;配方对层合板的力学性能有一定影响;其破坏形式与铺层方式和测试角度关系密切,而与其配方基本无关。
文摘A fatigue failure criterion for predicting the fatigue life of notched orthotropic fiber reinforced plasties (FRP) plates based on the concept of stress field intensity (SFI) near the notch root is subjected to further experiments. The investigation is accomplished by obtaining experimental data on the notched specimens of glass fiber reinforced plastics (GFRP) with edged notches under tension tension cyclic loading. The process of initiation and growth of fatigue damage near the notch root is measured by means of the optic system with a computer controlled display (CCD) camera. The experimental results show that the number of loading cycles required to initiate fatigue damage is governed by the stress field intensity.
基金supported by the National Natural Science Foundation of China(Grant No.11302151)the Fundamental Research Funds for the Central Universities
文摘A study was undertaken to determine the effects of several key geometry influencing factors on the impact response and energy absorption behavior of the glass fibre reinforced epoxy composites at low and intermediate energies.The energy-balance model was employed for characterising the energy absorption behavior and it depends strongly on the plate diameter and thickness.In addition,the damage vs.energy and force maps is effective in monitoring damage growth within the composite panel.The response of the composite laminate configurations characterized by different stacking sequences subjected to low velocity impacts with different impact energies have also been studied to estimate the damage initiation of composites.